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Direct Voltage Control With Slip Angle Estimation to Extend the Range of Supported Asymmetric Loads for Stand-Alone DFIG

机译:具有滑移角估计功能的直接电压控制可扩展独立DFIG的支持的不对称负载范围

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摘要

The control system for stand-alone doubly fed induction generator (DFIG) is commonly based on the “sensorless” direct voltage control. This paper adopts the direct voltage control and employs negative-sequence compensation through rotor-side converter to support asymmetric “unbalanced” loads. This paper demonstrates the limitation of the conventional direct voltage control to obtain the slip angle, and the consequent limitation of the negative-sequence compensation control to support full range of asymmetric loads. To overcome these limitations, this paper proposes a new estimator of the angle of the rotor current in the synchronous reference frame. The proposed estimator requires one DFIG parameter only which is the stator inductance, which can be measured allowing using real machine parameter. This paper proposes a simple method to integrate the proposed estimator into the direct voltage control, which enables it to obtain the slip angle, and it enables the negative-sequence compensation to support full range of asymmetric loads. Experimental results for a 1.1-kW prototype DFIG are provided to validate the proposed method and to demonstrate its advantages over the conventional direct voltage control.
机译:独立双馈感应发电机(DFIG)的控制系统通常基于“无传感器”直流电压控制。本文采用直接电压控制,并通过转子侧变流器进行负序补偿,以支持不对称的“不平衡”负载。本文证明了常规直流电压控制获得滑移角的局限性,以及负序补偿控制对支持全部非对称负载范围的局限性。为了克服这些限制,本文提出了一种新的同步参考系中转子电流角度的估计器。提出的估算器仅需要一个DFIG参数,即定子电感,就可以使用实际电机参数进行测量。本文提出了一种简单的方法,将拟议的估算器集成到直流电压控制中,从而可以获取滑移角,并且可以进行负序补偿,以支持整个范围的非对称负载。提供了1.1千瓦原型DFIG的实验结果,以验证所提出的方法并证明其优于常规直流电压控制的优势。

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